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    • 13. 发明申请
    • Systems and methods for chiral detection and analysis
    • 用于手性检测和分析的系统和方法
    • US20070008530A1
    • 2007-01-11
    • US11471994
    • 2006-06-21
    • Phillip GibbsJohn Wade
    • Phillip GibbsJohn Wade
    • G01J4/00
    • G01M11/04G01J1/44G01J1/46G01N21/0332G01N21/05G01N21/1717G01N21/21G01N2021/0346G01N2021/1727
    • Relating to chiral detection systems, various improvements are disclosed including an improved apparatus for detecting a chiral property of a sample. It has a rugged and stable optical rail that operates as a heat sink to the systems' elements and comprises a captive guide structure of heat conductive material having an elevated top platform and a dove tailed lip on the sides. The elevated top platform has a substantial width in comparison to a height of the elevated top platform. The apparatus further includes a wide base portion of heat conductive material supportive of the captive guide structure. The base has a width that is at least twice the width of the elevated top platform and a substantial thickness relative to the captive guide structure. Multiple system elements can be securely mounted on the captive guide structure with some elements being in thermal contact with the elevated top platform;
    • 关于手性检测系统,公开了各种改进,包括用于检测样品的手性性质的改进的装置。 它具有坚固和稳定的光导轨,其作为系统元件的散热器,并且包括导热材料的捕获引导结构,其具有升高的顶部平台和在侧面上的鸽尾尾唇。 升高的顶部平台与升高的顶部平台的高度相比具有相当大的宽度。 该装置还包括支撑捕获引导结构的导热材料的宽基部。 基座的宽度至少是升高的顶部平台宽度的两倍,并且相对于捕获引导结构具有相当大的厚度。 多个系统元件可以牢固地安装在捕获引导结构上,其中一些元件与升高的顶部平台热接触;
    • 14. 发明授权
    • Forecasting an energy output of a wind farm
    • 预测风力发电场的能源产出
    • US06975925B1
    • 2005-12-13
    • US10393703
    • 2003-03-19
    • David L. BarnesRuben JuarezJohn Wade
    • David L. BarnesRuben JuarezJohn Wade
    • F03D7/00H02J1/14
    • G01W1/10F03D7/048F05B2260/80F05B2260/821F05B2270/335Y02E10/723
    • Methods and apparatus for forecasting an energy output of a wind farm. A method for forecasting an energy output of a wind farm includes maintaining a data base of wind patterns, each wind pattern being associated with an energy output that the wind farm produces. The method includes receiving a current wind pattern. The method includes searching the data base for a wind pattern that matches the current wind pattern. The method includes calculating a forecast energy output that the wind farm will produce in response to the current wind pattern, the calculation being based, when there is a matching wind pattern in the knowledge base, on the energy output associated with the matching wind pattern.
    • 用于预测风力发电场能量输出的方法和装置。 用于预测风力发电场的能量输出的方法包括维护风力图案的数据库,每个风力模式与风力发电场产生的能量输出相关联。 该方法包括接收当前风模式。 该方法包括在数据库中搜索与当前风模式匹配的风模式。 该方法包括计算响应于当前风力模式的风力发电场将产生的预测能量输出,当在知识库中存在匹配的风力模式时,基于与匹配风力模式相关联的能量输出的计算。
    • 17. 发明授权
    • Energy control method for an inkjet print cartridge
    • 喷墨打印墨盒的能量控制方法
    • US06315381B1
    • 2001-11-13
    • US09071138
    • 1998-04-30
    • John WadeGraham Ross
    • John WadeGraham Ross
    • B41J29393
    • B41J2/04506B41J2/0451B41J2/04528B41J2/04541B41J2/04543B41J2/04563B41J2/0457B41J2/04573B41J2/0458B41J2/04581B41J2/0459B41J2/04591B41J29/393B41J2202/17H05K1/118
    • The present invention is an energy control system and method for an inkjet printer cartridge for controlling the droplet firing energy. One embodiment of the present invention includes calibrating an inkjet print cartridge having a printhead die divided into sections. This method includes selecting an operational range of the inkjet print cartridge, measuring the electrical characteristics of the electrical components over this operational range, calculating an optimal calibration value for the electrical characteristics of each section, and storing these optimal calibration values. In addition, the present invention allows operation of an inkjet printer having a print cartridge for determining optimal operating settings for the print cartridge. This method includes reading calibration values stored on the print cartridge, performing tests using the calibration values to determine optimal operating settings, adjusting settings on the print cartridge to the optimal operating settings, and storing the optimal operating settings in the printer.
    • 本发明是用于控制液滴燃烧能量的喷墨打印机墨盒的能量控制系统和方法。 本发明的一个实施例包括校准具有分成多个部分的打印头芯片的喷墨打印盒。 该方法包括选择喷墨打印墨盒的操作范围,在该操作范围内测量电气部件的电气特性,计算每个部分的电气特性的最佳校准值,以及存储这些最佳校准值。 此外,本发明允许具有用于确定打印盒的最佳操作设置的打印盒的喷墨打印机的操作。 该方法包括读取存储在打印碳粉盒上的校准值,使用校准值执行测试,以确定最佳操作设置,将打印碳粉盒上的设置调整到最佳操作设置,以及将最佳操作设置存储在打印机中。